Mechanical behavior of SiC_f reinforced SiC composites with fiber coating : Stress alleviation in SiC fiber by soft coating layer
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概要
- 論文の詳細を見る
The present research attempts to analyze and evaluate the mechanical behavior of SiCf in SiCf/SiC composites with and without soft coatings. The effects of soft fiber coating in the alleviation of indentation or flexural stress in the layered structure are investigated. Boron nitride and/or pyrocarbon as soft coating layer on SiC fiber are selected for the structure. Modeling is performed by changing the type of fiber, the type of soft layer, and layered stacking sequence of the soft layer. Finite element method (FEM) analyses are conducted to evaluate stress distributions under indentation or flexure loadings by displacement loading. Experimentally, the fiber coatings are conducted in the SiC fiber reinforced SiC composites. It was found that BN and/or pyrocarbon coating on the fiber alleviate the stress under the contact or flexure loading, which indicates that the appropriate design by soft layer on the fiber can reduce the maximum stress.
- 公益社団法人 日本セラミックス協会の論文
- 2009-05-01
著者
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KIM Tae
School of Architectural, Civil and Environment Engineering, Kumoh National University of Technology
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LEE Kee
School of Mechanical and Automotive Engineering, Kookmin University
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Woo S
Convergence Materials Research Center Korea Institute Of Energy Research
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Woo Sang
Convergence Materials Research Center Korea Institute Of Energy Research
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Han I
Convergence Materials Research Center Korea Institute Of Energy Research
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Lee Kee
School Of Mechanical And Automotive Engineering Kookmin University
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Lee Kee
School Of Mechanical And Automotive Engineering Kookmin Univ.
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Jang Kyung
School Of Mechanical And Automotive Engineering Kookmin University
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LEE Eugene
School of Mechanical and Automotive Engineering, Kookmin University
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HAN In
Convergence Materials Research Center, Korea Institute of Energy Research
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Lee Eugene
School Of Mechanical And Automotive Engineering Kookmin University
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Lee Kee
School Of Computer And Information Engineering Inha University
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Kim Tae
School of Advanced Materials Science and Engineering, Sungkyunkwan University, Suwon, Gyeonggi 440-746, Korea
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